Javascript must be enabled to continue!
Zoledronic acid affects over-angiogenic phenotype of endothelial cells in patients with multiple myeloma
View through CrossRef
Abstract
Therapeutic doses of zoledronic acid markedly inhibit in vitro proliferation, chemotaxis, and capillarogenesis of bone marrow endothelial cells of patients with multiple myeloma. Zoledronic acid also induces a sizeable reduction of angiogenesis in the in vivo chorioallantoic membrane assay. These effects are partly sustained by gene and protein inhibition of vascular endothelial growth factor and vascular endothelial growth factor receptor 2 in an autocrine loop. Mevastatin, a specific inhibitor of the mevalonate pathway, reverts the zoledronic acid antiangiogenic effect, indicating that the drug halts this pathway. Our results provide evidence of a direct antiangiogenic activity of zoledronic acid on multiple myeloma patient-derived endothelial cells due to at least four different mechanisms identified either in vitro or in vivo. Tentatively, we suggest that the zoledronic acid antitumoral activity in multiple myeloma is also sustained by antiangiogenesis, which would partly account for its therapeutic efficacy in multiple myeloma. [Mol Cancer Ther 2007;6(12):3256–62]
American Association for Cancer Research (AACR)
Title: Zoledronic acid affects over-angiogenic phenotype of endothelial cells in patients with multiple myeloma
Description:
Abstract
Therapeutic doses of zoledronic acid markedly inhibit in vitro proliferation, chemotaxis, and capillarogenesis of bone marrow endothelial cells of patients with multiple myeloma.
Zoledronic acid also induces a sizeable reduction of angiogenesis in the in vivo chorioallantoic membrane assay.
These effects are partly sustained by gene and protein inhibition of vascular endothelial growth factor and vascular endothelial growth factor receptor 2 in an autocrine loop.
Mevastatin, a specific inhibitor of the mevalonate pathway, reverts the zoledronic acid antiangiogenic effect, indicating that the drug halts this pathway.
Our results provide evidence of a direct antiangiogenic activity of zoledronic acid on multiple myeloma patient-derived endothelial cells due to at least four different mechanisms identified either in vitro or in vivo.
Tentatively, we suggest that the zoledronic acid antitumoral activity in multiple myeloma is also sustained by antiangiogenesis, which would partly account for its therapeutic efficacy in multiple myeloma.
[Mol Cancer Ther 2007;6(12):3256–62].
Related Results
Zoledronic Acid Is Not Equally Potent on Osteoclasts Generated From Different Individuals
Zoledronic Acid Is Not Equally Potent on Osteoclasts Generated From Different Individuals
ABSTRACT
Zoledronic acid is a bisphosphonate commonly used to treat bone diseases such as osteoporosis and cancer‐induced bone disease. Patie...
How zoledronic acid improves osteoporosis by acting on osteoclasts
How zoledronic acid improves osteoporosis by acting on osteoclasts
Osteoporosis is called a silent disease, because it is difficult to detect until comprehensive examinations for osteoporosis are performed or osteoporotic fractures occur. Zoledron...
MAF Protein Elicits Innate Resistance To Bortezomib In Multiple Myeloma
MAF Protein Elicits Innate Resistance To Bortezomib In Multiple Myeloma
Abstract
Multiple myeloma (MM) is a malignancy of terminally differentiated clonal plasma cells displaying significant molecular heterogeneity with 7 subgroups defin...
Data from Functional B7.2 and B7-H2 Molecules on Myeloma Cells Are Associated with a Growth Advantage
Data from Functional B7.2 and B7-H2 Molecules on Myeloma Cells Are Associated with a Growth Advantage
<div>Abstract<p><b>Purpose:</b> B7 family molecules expressed on antigen-presenting cells stimulate or inhibit normal immune responses. The aim of this stud...
Data from Functional B7.2 and B7-H2 Molecules on Myeloma Cells Are Associated with a Growth Advantage
Data from Functional B7.2 and B7-H2 Molecules on Myeloma Cells Are Associated with a Growth Advantage
<div>Abstract<p><b>Purpose:</b> B7 family molecules expressed on antigen-presenting cells stimulate or inhibit normal immune responses. The aim of this stud...
Abstract 193: Antiangiogenic effect of conditioned media derived from triple negative breast cancer cells in brain microvascular endothelial cells
in vitro
Abstract 193: Antiangiogenic effect of conditioned media derived from triple negative breast cancer cells in brain microvascular endothelial cells
in vitro
Abstract
Breast cancer is the most common malignancy among females and is a leading cause of cancer mortality. Brain metastasis is associated with poor prognosis ...
Data from A Hyaluronan and Proteoglycan Link Protein 1 Matrikine: Role of Matrix Metalloproteinase 2 in Multiple Myeloma NF-κB Activation and Drug Resistance
Data from A Hyaluronan and Proteoglycan Link Protein 1 Matrikine: Role of Matrix Metalloproteinase 2 in Multiple Myeloma NF-κB Activation and Drug Resistance
<div>Abstract<p>The NF-κB signaling pathway plays key roles in inflammation and the pathogenesis of many solid and hematologic malignancies, including multiple myeloma,...
Data from A Hyaluronan and Proteoglycan Link Protein 1 Matrikine: Role of Matrix Metalloproteinase 2 in Multiple Myeloma NF-κB Activation and Drug Resistance
Data from A Hyaluronan and Proteoglycan Link Protein 1 Matrikine: Role of Matrix Metalloproteinase 2 in Multiple Myeloma NF-κB Activation and Drug Resistance
<div>Abstract<p>The NF-κB signaling pathway plays key roles in inflammation and the pathogenesis of many solid and hematologic malignancies, including multiple myeloma,...

